MM
mamatha kumari murikinati
Also known as: M M Kumari, Mamatha Kumari M
Yogi Vemana University, Indian Institute of Technology Madras, National Institute of Technology Tiruchirappalli, University of Mysore
Employment
-
Yogi Vemana University Associate Professor2022 - 2025
-
Yogi Vemana University Assistant Professor (Stage III)2019 - 2022
-
Yogi Vemana University Assistant Professor (Grade II)2014 - 2019
-
Yogi Vemana University Assistant Professor2009 - 2014
Education
-
Indian Institute of Technology Madras PhD2011 - 2015
-
National Institute of Technology Tiruchirappalli M.Tech (Materials Science)2007 - 2009
-
University of Mysore M.Sc (Physics)2004 - 2006
-
Regional Institutes of Education Mysore B.Sc.Ed2000 - 2004
Projects & Funding
Projects & funding information is unavailable.
Publications (67)
- Continuous hydrogen production from sunrise to sunset: Advancing photocatalytic stability via interface-engineered nanocomposite tris-s-triazine g-C3N4/ZnIn2S4 heterostructure Save
- Continuous Hydrogen Production from Sunrise to Sunset: Advancing Photocatalytic Stability Via Interface-Engineered Nanocomposite Tris-S-Triazine G-C3n4/Znin2s4 Heterostructure Save
- H2Ti3O7 nanotubes-derived TiO2 nanorods: Precursor engineering to tailor phase, crystallinity, and photocatalytic performance for efficient dye degradation under natural sunlight irradiation Save
- In situ-engineered interfaces in copper oxynitride (CuxOyNz) systems with synergistic properties for photocatalytic H2 production and N2 fixation applications Save
- Techniques and Methods to Study Physiochemical Properties of Micro-nanostructure Characteristics in the Food Industry Save
- Synergistic Interfacial Engineering of Green TiO2@g-C3N4 for Noble-Metal-Free Photocatalytic H2 Generation under Natural Sunlight Save
- Insight into the S-scheme charge transfer interface for enhanced photocatalytic hydrogen production Save
- ZnS/ZnSe heterojunction photocatalyst for augmented hydrogen production: Experimental and theoretical insights Save
- Shuttling of photo excitons in 1D TiO2-based nanostructures for photocatalytic H2 production and environmental applications Save
- Shell and interface engineering in core–shell nanophotocatalysts for sustainable hydrogen production Save